Ghangho Kim
Papers
1
Total Citations
3
H-Index
1
About
Ghangho Kim is a researcher focused on advancing indoor navigation and positioning systems, a critical challenge in environments where GPS signals are unreliable. His work centers on integrating pseudolite technology with low-cost inertial measurement units (IMUs) and magnetometers to create robust pedestrian navigation solutions. Kim’s key contribution lies in developing algorithms that fuse these sensors, including innovative in-flight calibration techniques for magnetometers, to improve accuracy and reliability in indoor settings. While his most-cited paper, "Pedestrian Indoor Navigation Algorithm based on the Pseudolite and Low-cost IMU with Magnetometers Including In-Flight Calibration" (2010), has garnered 3 citations, it addresses a persistent problem in navigation research—indoor positioning—by offering a practical, cost-effective alternative to systems like Wi-Fi, UWB, or RFID. Kim’s work is notable for its emphasis on real-world applicability, aiming to bridge the gap between theoretical navigation models and deployable solutions. His research contributes to the ongoing effort to achieve definitive indoor positioning, making him a relevant figure for students and researchers exploring sensor fusion and location-based services in challenging environments.
Research Focus
Key Achievements
Top Papers
- 1